Horizontal hydrogel two-way feeder
The horizontal dual-direction water gel feeder system addresses inefficiencies in manual water gel addition by alternating stockpiles and maintaining consistent gel levels, enhancing production flow and efficiency in packaging processes.
Patent Information
- Application Number
- CN202521063779.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2035-05-28
AI Technical Summary
Traditional hydrogel feeding equipment has high labor intensity, low efficiency and affects the smoothness of the equipment. The existing automatic feeding equipment has complex structure and requires shutdown to supplement.
The horizontal hydrogel bidirectional feeder is designed, using left and right pile racks and mobile racks, and continuously feeding is achieved through the lifting drive assembly and the suction head assembly. The adaptability of the pile base plate is improved to maintain the height of the gel top.
The continuous feeding operation of hydrogel is realized, the smooth operation and production efficiency of equipment are improved, manual intervention is reduced, and the equipment structure is simplified.
Smart Images

Figure CN223101123U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to packaging equipment, in particular to a horizontal hydrogel two-way feeder. Background Art
[0002] Hydrogel is a kind of high water absorption and high water retention material, which is widely used in various different scenarios such as facial masks, antipyretic patches, and analgesic patches in cosmetics. After being produced into sheets, one type of hydrogel needs to be packaged. The traditional sheet hydrogel is generally manually fed, which has a high labor intensity for workers and low efficiency. Therefore, some feeders that can automatically feed have also appeared on the market, but their structures are relatively complex. Moreover, after the hydrogel is fed, it is necessary to stop the machine and wait for the replenishment and stacking of the hydrogel, which affects the smooth operation of the overall packaging equipment. Summary of the Utility Model
[0003] In view of the deficiencies of the background art, the technical problem to be solved by the utility model is to provide a horizontal hydrogel two-way feeder for solving the above problems.
[0004] To this end, the utility model is implemented as follows:
[0005] The horizontal hydrogel two-way feeder has a frame, and is characterized in that: a left stacking rack and a right stacking rack are arranged on the frame, and there is an interval space for the conveyor belt to pass between the left and right stacking racks. A left stacking bottom plate is arranged corresponding to the left stacking rack, and the left stacking bottom plate is connected with a first lifting drive assembly. A right stacking bottom plate is arranged corresponding to the right stacking rack, and the right stacking bottom plate is connected with a second lifting drive assembly. It further includes a moving frame, an elevating frame is arranged on the moving frame, and a suction head is arranged on the elevating frame. The moving frame can drive the suction head to move above the left stacking rack, the interval space and the right stacking rack.
[0006] The first lifting drive assembly includes a first motor, the output end of the first motor is connected with a first screw rod, the first screw rod is screwed with a first lifting block, a sliding seat is arranged on the first lifting block, and a slide rail matched with the sliding seat is arranged on the frame. The first lifting block is connected with the left stacking bottom plate.
[0007] The second lifting drive assembly includes a second motor, the output end of the second motor is connected with a second screw rod, the second screw rod is screwed with a second lifting block, a sliding seat is arranged on the second lifting block, and a slide rail matched with the sliding seat is arranged on the frame. The second lifting block is connected with the right stacking bottom plate.
[0008] It further includes a third motor, the output end of the third motor is connected with a synchronous pulley in a transmission manner, a synchronous belt is wound around the synchronous pulley, and the synchronous belt is connected with the moving frame.
[0009] A first cylinder is provided on the moving frame, and the piston rod of the first cylinder is connected to the lifting frame.
[0010] A plurality of left stacking frames and right stacking frames are arranged in a row.
[0011] For the horizontal hydrogel two-way feeder of the above technical solution, by providing left and right stacking frames and cooperating with the moving frame and the suction assembly, it is possible to control the moving frame to drive the suction assembly to suck and feed from the left stacking frame or the right stacking frame, and the other stacking frame can be used for placing and replenishing the hydrogel, thereby realizing continuous feeding operation, effectively improving the overall running smoothness and production efficiency of the packaging equipment; at the same time, a liftable stacking bottom plate is provided, and the stacking bottom plate will be adaptively lifted during the feeding process, so as to ensure that the top hydrogel always remains at the same height, which is convenient for the suction assembly to suck the top hydrogel and transfer it into the packaging substrate on the conveyor belt. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present utility model has the following drawings:
[0013] Figure 1 is a schematic structural view of the present utility model;
[0014] Figure 2 is a side view of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0015] As shown in the figure, the horizontal hydrogel two-way feeder disclosed by the present utility model has a frame 1. On the frame 1, a left stacking rack 5 and a right stacking rack 14 are provided. There is an interval space 18 for the conveyor belt to pass through between the left and right stacking racks. A left stacking bottom plate 4 is provided corresponding to the left stacking rack 5. The left stacking bottom plate 4 is connected to the first lifting drive assembly. In this embodiment, the first lifting drive assembly includes a first motor 6. The output end of the first motor 6 is connected to a first screw rod 3. The first screw rod 3 is screwed with a first lifting block 2. A sliding seat is provided on the first lifting block 2. A slide rail matched with the sliding seat is provided on the frame. The first lifting block 2 is connected to the left stacking bottom plate 4. By controlling the first motor 6 to drive the first screw rod 3 to rotate, the first lifting block 2 and the left stacking bottom plate 4 can be driven to lift. A right stacking bottom plate 15 is provided corresponding to the right stacking rack 14. The right stacking bottom plate 15 is connected to the second lifting drive assembly. In this embodiment, the second lifting drive assembly includes a second motor 13. The output end of the second motor 13 is connected to a second screw rod 16. The second screw rod 16 is screwed with a second lifting block 17. A sliding seat is provided on the second lifting block 17. A slide rail matched with the sliding seat is provided on the frame. The second lifting block 17 is connected to the right stacking bottom plate 15. By controlling the second motor 13 to drive the second screw rod 16 to rotate, the second lifting block 17 and the right stacking bottom plate 15 can be driven to lift. It further includes a moving frame 9. An elevating frame 10 is provided on the moving frame 9. A suction head 11 is provided on the elevating frame 10. The moving frame 9 can drive the suction head 11 to move above the left stacking rack, the interval space and the right stacking rack. It further includes a third motor 7. The output end of the third motor 7 is connected to a synchronous pulley in a transmission manner. A synchronous belt 12 is wound around the synchronous pulley. The synchronous belt 12 is connected to the moving frame 9. By controlling the third motor 7 to drive the synchronous belt 12 to act, the moving frame 9 can be driven to move. A first cylinder 8 is provided on the moving frame 9. The piston rod of the first cylinder 8 is connected to the elevating frame 10. By controlling the first cylinder 8 to act, the elevating frame 10 and the suction head 11 can be driven to lift. The left stacking rack 5 and the right stacking rack 14 are both arranged in multiple rows, which can realize the synchronous feeding of multiple groups of hydrogels at one time and effectively improve the feeding efficiency.
[0016] The working principle of the present utility model is as follows: The moving frame 9 drives the lifting frame 10 and the suction head 11 to move above the left stacking rack 5. Then, the lifting frame 10 drives the suction head 11 to descend and contact the sheet-shaped hydrogel at the inner top of the left stacking rack 5 and suck the sheet-shaped hydrogel. After that, the lifting frame 10 ascends, and the moving frame 9 drives the lifting frame 10 to move to the interval space 18. The lifting frame 10 descends, and the suction head 11 releases the sheet-shaped hydrogel, enabling the hydrogel to fall into the packaging substrate on the conveyor belt. This cycle is repeated to achieve the feeding operation of the hydrogel. During the feeding process, the left stacking bottom plate 4 will continuously lift by a certain height, thereby ensuring that the top height of the stacked hydrogels always remains the same, so that the suction head 11 can stably suck the hydrogel. When the hydrogel in the left stacking rack 5 is completely sucked, the moving frame 9 will drive the lifting frame 10 to reciprocate between the right stacking rack 14 and the interval space 18, and then continue to suck and feed the hydrogel in the right stacking rack 14. At this time, an operator can stack and place new hydrogels in the left stacking rack 5 to achieve the replenishment of the hydrogel. The replenishment and feeding of the hydrogel do not interfere with each other, and continuous feeding operation without stopping the machine can be effectively achieved.
[0017] With this structure of the present utility model, by setting the left and right stacking racks and cooperating with the moving frame and the suction component, the moving frame can be controlled to drive the suction component to suck and feed from the left stacking rack or the right stacking rack, and the other stacking rack can be used for placing and replenishing the hydrogel, thereby achieving continuous feeding operation, effectively improving the smoothness of the overall operation of the packaging equipment and the production efficiency. At the same time, a liftable stacking bottom plate is provided, and during the feeding process, the stacking bottom plate will adaptively lift, thereby ensuring that the top hydrogel always remains at the same height, which is convenient for the suction component to suck the top hydrogel and transfer it to the packaging substrate on the conveyor belt.
Claims
1. Horizontal hydrogel two-way feeder, with a frame (1), characterized in that: A left stacking rack (5) and a right stacking rack (14) are arranged on the rack (1). There is an interval space (18) for the conveyor belt to pass through between the left and right stacking racks. A left stacking bottom plate (4) is arranged corresponding to the left stacking rack (5), and the left stacking bottom plate (4) is connected to a first lifting drive assembly. A right stacking bottom plate (15) is arranged corresponding to the right stacking rack (14), and the right stacking bottom plate (15) is connected to a second lifting drive assembly. It further includes a moving frame (9). A lifting frame (10) is arranged on the moving frame (9), and a suction head (11) is arranged on the lifting frame (10). The moving frame (9) can drive the suction head (11) to move above the left stacking rack, the interval space, and the right stacking rack.
2. The horizontal hydrogel two-way feeder according to claim 1, characterized in that: The first lifting drive assembly includes a first motor (6). The output end of the first motor (6) is connected to a first screw rod (3). The first screw rod (3) is screwed with a first lifting block (2). A sliding seat is arranged on the first lifting block (2), and a slide rail matched with the sliding seat is arranged on the rack. The first lifting block (2) is connected to the left stacking bottom plate (4).
3. The horizontal hydrogel two-way feeder according to claim 1, wherein: The second lifting drive assembly includes a second motor (13). The output end of the second motor (13) is connected to a second screw rod (16). The second screw rod (16) is screwed with a second lifting block (17). A sliding seat is arranged on the second lifting block (17), and a slide rail matched with the sliding seat is arranged on the rack. The second lifting block (17) is connected to the right stacking bottom plate (15).
4. The horizontal hydrogel two-way feeder according to claim 1, characterized in that: It further includes a third motor (7). The output end of the third motor (7) is connected to a synchronous pulley in a transmission manner. A synchronous belt (12) is wound around the synchronous pulley, and the synchronous belt (12) is connected to the moving frame (9).
5. The horizontal hydrogel two-way feeder according to claim 1, wherein: A first cylinder (8) is arranged on the moving frame (9). The piston rod of the first cylinder (8) is connected to the lifting frame (10).
6. The horizontal hydrogel two-way feeder according to claim 1, wherein: A plurality of left stacking racks (5) and right stacking racks (14) are arranged in a row.